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The Photometric Properties of Microwave High Intensity Discharge (HID) Lamps

机译:微波高强度放电(HID)灯的光度特性

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References(19) This paper calculates the visible radiations of discharges sustained by a microwave (mw) electromagnetic field of a high intensity discharge (HID) lamp. A microwave Mercury (Hg) lamp is considered to be excited by microwave electromagnetic fields in a cylindrical TM010 mode. A 2.45 GHz microwave generator is going to be used to sustain a stable plasma column with discharge gases. A numerical model is used to obtain the power balance in the discharge based on a solution to the Elenbaas–Heller equation for the gas temperature, and a simple “skin depth” model to describe the penetration of the maintenance electric field in the discharge. The obtained plasma for the discharge is assumed to be at local thermodynamic equilibrium (LTE) with no diffusion. Classical spectral line broadening theory is used to provide information on the visible spectrum. However, this theory is inadequate to describe the UV and IR portion of the spectrum, so self-consistent modeling of these discharges is not possible at present and only visible radiations are considered. We show in this work that an increase in electric power does not necessarily lead to an increase in the visible radiation of mw HID lamp. The photometric curve of a pure Hg mw lamp is also calculated. The lamp volume is subdivided into meshes and a local absorption and emission coefficients is assigned to each mesh. A model based on ray tracing method is employed to simulate the radiation transport in these lamps. The line profile is obtained by the convolution of the Lorentzian and Quasi-static profiles. The output flux, luminous flux, luminous efficacy, the Correlated Color Temperature (CCT) and photometric curves of the lamp are therefore obtained.
机译:参考文献(19)本文计算了高强度放电(HID)灯的微波(mw)电磁场所维持的放电可见辐射。微波汞(Hg)灯被认为是通过圆柱形TM010模式的微波电磁场激发的。 2.45 GHz微波发生器将用于维持带有放电气体的稳定等离子体柱。基于对气体温度的Elenbaas-Heller方程的解,可以使用数值模型获得放电中的功率平衡,并使用简单的“趋肤深度”模型来描述维持电场在放电中的渗透。所获得的用于放电的等离子体被假定为处于局部热力学平衡(LTE)且没有扩散。经典的谱线加宽理论用于提供可见光谱的信息。但是,该理论不足以描述光谱的紫外和红外部分,因此目前无法对这些放电进行自洽建模,仅考虑可见辐射。我们在这项工作中表明,电功率的增加并不一定会导致mw HID灯的可见辐射增加。还计算了纯汞汞灯的光度曲线。将灯的体积细分为多个网格,并将局部吸收和发射系数分配给每个网格。采用基于光线追踪方法的模型来模拟这些灯中的辐射传输。线轮廓是通过洛伦兹轮廓和准静态轮廓的卷积获得的。因此,获得了灯的输出光通量,光通量,发光效率,相关色温(CCT)和光度曲线。

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